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Practical Frequency and Time Optimal Design of Passive Linear Vibration Isolation Mounts

机译:被动线性隔振支架的实用频率和时间优化设计

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In this paper we examine a linear one-degree of freedom vibration isolator mount. The linearity of the system allows us to analyze its frequency and time response characteristics analytically. Optimal damping and stiffness values for the isolator are obtained by minimizing certain cost functions, which are the Root Mean Square (RMS) of the absolute acceleration and the relative displacement. These RMS cost functions are used to create a design chart for the isolator parameters. This is very useful particularly in the presence of physical constraints such as a limit in relative displacement. The time response of the system for a unit step input is also considered to gain an insight into the transient characteristics of the system. We obtain an optimal value for the damping ratio of the system in order to minimize the transmitted acceleration. Combining the frequency and time response analyses leads to an optimal value for the mount natural frequency and damping ratio satisfying both time and frequency domains. The results are verified numerically using measured acceleration as input.
机译:在本文中,我们研究了线性一自由度振动隔离器安装座。系统的线性度使我们能够分析性地分析其频率和时间响应特性。通过使某些成本函数(即绝对加速度和相对位移的均方根(RMS))最小化,可以获得隔离器的最佳阻尼和刚度值。这些RMS成本函数用于为隔离器参数创建设计图。这在存在物理限制(例如相对位移的限制)的情况下尤其有用。还考虑了系统对于单位步进输入的时间响应,以深入了解系统的瞬态特性。为了使传递的加速度最小,我们获得了系统阻尼比的最佳值。将频率和时间响应分析结合起来,可以得到满足时域和频域的安装固有频率和阻尼比的最佳值。使用测得的加速度作为输入,对结果进行数值验证。

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